福建省花生地方品种营养特性分析
作者:
基金项目:

福建省“5511”协同创新工程项目(XTCXGC2021020);福建省公益类科研院所专项(2020R1022006);福建省农业科学院创新团队项目(CXTD2021011-1)资助


Nutrition Characterization of Peanut (Arachis hypogaea) Varieties from Fujian, China
Author:
  • YAN Sunan

    YAN Sunan

    Laboratory of Quality and Safety Risk Assessment for Agro-products, Ministry of Agriculture and Rural Affairs, Institute of Agricultural Quality Standards and Testing Technology Research, Fujian Academy of Agricultural Sciences, Fujian Key Laboratory of Quality and Safety of Agri-Products, Fuzhou 350003, China
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  • LIN Xiangxin

    LIN Xiangxin

    Laboratory of Quality and Safety Risk Assessment for Agro-products, Ministry of Agriculture and Rural Affairs, Institute of Agricultural Quality Standards and Testing Technology Research, Fujian Academy of Agricultural Sciences, Fujian Key Laboratory of Quality and Safety of Agri-Products, Fuzhou 350003, China
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  • LIU Wenjing

    LIU Wenjing

    Laboratory of Quality and Safety Risk Assessment for Agro-products, Ministry of Agriculture and Rural Affairs, Institute of Agricultural Quality Standards and Testing Technology Research, Fujian Academy of Agricultural Sciences, Fujian Key Laboratory of Quality and Safety of Agri-Products, Fuzhou 350003, China
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  • HUANG Minmin

    HUANG Minmin

    Laboratory of Quality and Safety Risk Assessment for Agro-products, Ministry of Agriculture and Rural Affairs, Institute of Agricultural Quality Standards and Testing Technology Research, Fujian Academy of Agricultural Sciences, Fujian Key Laboratory of Quality and Safety of Agri-Products, Fuzhou 350003, China
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  • HUANG Biao

    HUANG Biao

    Laboratory of Quality and Safety Risk Assessment for Agro-products, Ministry of Agriculture and Rural Affairs, Institute of Agricultural Quality Standards and Testing Technology Research, Fujian Academy of Agricultural Sciences, Fujian Key Laboratory of Quality and Safety of Agri-Products, Fuzhou 350003, China
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  • YAO Qinghua

    YAO Qinghua

    Laboratory of Quality and Safety Risk Assessment for Agro-products, Ministry of Agriculture and Rural Affairs, Institute of Agricultural Quality Standards and Testing Technology Research, Fujian Academy of Agricultural Sciences, Fujian Key Laboratory of Quality and Safety of Agri-Products, Fuzhou 350003, China
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  • 摘要
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    摘要:

    为挖掘并精准利用福建地方特色花生(Arachis hypogaea)资源,以‘赖坊’、‘衙口小琉球’、‘朱口小籽’、‘文亨红衣’、‘洋后’等5种地理标志花生为研究对象,描述生物学性状,比较分析其营养(脂肪酸、矿质元素、维生素E、甾醇和白藜芦醇等)差异。结果表明,供试花生外形特征和种皮颜色有明显的差异,主茎高或侧枝长与单株生产力均呈负相关;部分品种间的蛋白质、脂肪、可溶性糖、膳食纤维、脂肪酸、矿质元素和天然功能性成分含量差异显著(P < 0.05),其中‘衙口小琉球’的蛋白质含量最高,‘朱口小籽’的脂肪、油亚比、维生素E、白藜芦醇含量最高,‘文亨红衣’的铁、植物甾醇含量最高。供试的5个花生品种均达到食用花生1级、油用花生3级标准,且地方特征明显,更适合直接食用。

    Abstract:

    To excavate and accurately utilize Arachis hypogaea resources in Fujian, five geographical indication varieties with different phenotype and seed coat color, including 'Laifang', 'Yakouxiaoliuqiu', 'Zhukouxiaozi', 'Wenhenghongyi' and 'Yanghou', were collected. Their biological traits were described in details and the nutritional components, such as fatty acid, mineral element, vitamin E, and sterols were analyzed. The appearance characteristics and seed coat color of these peanut varieties were different. The main stem height or lateral branch length was negatively correlated with individual plant productivity. Contents of protein, fat, soluble sugar, dietary fiber, fatty acid, mineral elements and bioactive components in different peanut varieties were significantly different (P < 0.05). Among these, the contents of protein in 'Yakouxiaoliuqiu', fat, O/L value, vitamin E, and resveratrol in 'Zhukouxiaozi', Fe and phytosterol in 'Wenhenghongyi' was the highest, respectively. These results indicated that all five special peanuts accord with the grade 1 standards for direct consumption and grade 3 peanuts for oil, and have obvious local characteristics such as high iron contents.

    参考文献
    [1] LIAO B S. A review on progress and prospects of peanut industry in China[J]. Chin J Oil Crop Sci, 2020, 42(2):161-166. 廖伯寿. 我国花生生产发展现状与潜力分析[J]. 中国油料作物学报, 2020, 42(2):161-166. doi:10.19802/j.issn.1007-9084.2020115.
    [2] FAO. FAO Database[DB/OL]. (2020-02-06). 联合国粮农组织. FAO数据库[DB/OL]. (2020-02-06). https://www.fao.org/faostat/en/#data/QCL.
    [3] LI Y Z, XIAO H Q, ZHAO M M, et al. Research progress on modification mechanism and application of peanut protein[J]. Grain Sci Technol Econ, 2016, 41(5):65-69. 李玉珍, 肖怀秋, 赵谋明, 等. 花生蛋白质改性机理及应用研究进展[J]. 粮食科技与经济, 2016, 41(5):65-69. doi:10.16465/j.gste.cn431252ts.20160518.
    [4] ZHANG Z X, WANG Q D, ZHAO J Y, et al. Nutritional components comprehensive analysis of stalk and kernels in different peanut varieties[J]. J Plant Genet Resour, 2020, 21(1):215-223. 张忠信, 王庆东, 赵婧伊, 等. 不同花生品种秸秆与籽仁营养成分综合分析[J]. 植物遗传资源学报, 2020, 21(1):215-223. doi:10.13430/j.cnki.jpgr.20191029004.
    [5] DU Y, WANG Q, LIU H Z, et al. Major protein fractions and subunit contents in peanut from different cultivars[J]. Food Sci, 2013, 34(9):42-46. 杜寅, 王强, 刘红芝, 等. 不同品种花生蛋白主要组分及其亚基相对含量分析[J]. 食品科学, 2013, 34(9):42-46. doi:10.7506/spkx1002-6630-201309010.
    [6] ZHANG J S, WANG Q, LIU H Z, et al. Comparative analysis of tocopherol and phytosterol composition of peanut cultivars from different regions[J]. Food Sci, 2012, 33(22):191-195. 张建书, 王强, 刘红芝, 等. 不同地区花生品种VE、植物甾醇组成与含量的分析比较[J]. 食品科学, 2012, 33(22):191-195.
    [7] SHAN S H, LI C J, XU T T, et al. Research of storage period on seed components of peanut germplasm[J]. J Peanut Sci, 2005, 34(3):21-25. 单世华, 李春娟, 许婷婷, 等. 贮藏期对花生种质籽粒成分影响研究[J]. 花生学报, 2005, 34(3):21-25. doi:10.3969/j.issn.1002-4093.2005.03.005.
    [8] GROSSO N R, ZYGADLO J A, LAMARQUE A L, et al. Proximate, fatty acid and sterol compositions of aboriginal peanut (Arachis hypogaea L.) seeds from Bolivia[J]. J Sci Food Agric, 1997, 73(3):349-356. doi:10.1002/(SICI)1097-0010(199703)73:3<349::AID-JSFA736>3.0.CO;2-E.
    [9] GROSSO N R, GUZMÁN C A. Lipid, protein, and ash contents, and fatty acid and sterol compositions of peanut (Arachis hypogaea L.) seeds from Ecuador[J]. Peanut Sci, 1995, 22(2):84-89. doi:10.3146/i0095-3679-22-2-2.
    [10] CHEN X Y, XU R R, TANG Z X. Analysis of genetic diversity of Fujian peanut farm varieties based on agronomic traits[J]. Chin Agric Sci Bull, 2015, 31(24):86-92. 陈湘瑜, 徐日荣, 唐兆秀. 福建省花生农家品种农艺性状的遗传多样性分析[J]. 中国农学通报, 2015, 31(24):86-92.
    [11] CHEN Y S, YE Y X, HONG D Z, et al. Characterization and evaluation of peanut germplasm in Fujian[J]. Fujian J Agric Sci, 1999, 14(2):12-16. 陈永水, 叶贻勋, 洪敦章, 等. 福建花生种质资源特征特性的鉴定与分析[J]. 福建农业学报, 1999, 14(2):12-16. doi:10.3969/j.issn.1008-0384.1999.02.003.
    [12] XU R R, TANG Z X. Genetic diversity of peanut landraces in Fujian Province[J]. Mol Plant Breed, 2014, 12(6):1235-1242. 徐日荣, 唐兆秀. 福建省花生地方品种的遗传多样性研究[J]. 分子植物育种, 2014, 12(6):1235-1242. doi:10.13271/j.mpb.012.001235.
    [13] QIN L, LIU H, DU P, et al. Determination of sucrose content in peanut seed kernel based on near infrared spectroscopy[J]. Chin J Oil Crop Sci, 2016, 38(5):666-671. 秦利, 刘华, 杜培, 等. 基于近红外光谱法的花生籽仁中蔗糖含量的测定[J]. 中国油料作物学报, 2016, 38(5):666-671. doi:10.7505/j.issn.1007-9084.2016.05.018.
    [14] PENG Z Y, SHAN L, ZHANG Z M, et al. Variation analysis of amino acid content in peanut distant hybrid progeny[J]. J Peanut Sci, 2019, 48(1):21-26. doi:10.14001/j.issn.1002-4093.2019.01.004.
    [15] CHEN T W. Studies on quality analysis on major Fujian peanuts and new technologies of peanut processing[D]. Fujian:Fujian Agricultural and Forestry University, 2008. 陈团伟. 福建主栽花生品质分析及花生加工新技术的研究[D]. 福州:福建农林大学, 2008.
    [16] FANG Y J, SUN Z Q, MIAO L J, et al. Characterization of kernel appearance and nutritional quality in peanut accessions and its application for food-use peanut breeding[J]. J Plant Genet Resour, 2018, 19(5):875-886. 房元瑾, 孙子淇, 苗利娟, 等. 花生籽仁外观和营养品质特征及食用型花生育种利用分析[J]. 植物遗传资源学报, 2018, 19(5):875-886. doi:10.13430/j.cnki.jpgr.20180110001.
    [17] AKHTAR S, KHALID N, AHMED I, et al. Physicochemical characteristics, functional properties, and nutritional benefits of peanut oil:A review[J]. Crit Rev Food Sci Nutr, 2014, 54(12):1562-1575. doi:10.1080/10408398.2011.644353.
    [18] LI L, LIU H J, SUN Y T, et al. Study on the breeding of high linoleic acid, high protein, low oil content and high quality new edible peanut variety 'Xiang Hua B'[J]. J Peanut Sci, 2003, 32(S1):220-223. 李林, 刘海军, 孙玉桃, 等. 高亚油酸高蛋白低油分优质食用型花生新品种湘花B的选育研究[J]. 花生学报, 2003, 32(S1):220-223. doi:10.3969/j.issn.1002-4093.2003.z1.046.
    [19] FU C, ZHANG X J, YUE F L, et al. Nutrition and quality analysis of special new peanut varieties[J]. J China Agric Univ, 2017, 22(5):32-38. 付春, 张小军, 岳福良, 等. 特色花生新品系营养品质解析[J]. 中国农业大学学报, 2017, 22(5):32-38. doi:10.11841/j.issn.1007-4333.2017.05.04.
    [20] LIN M, ZHAO J F, ZHENG X Y, et al. Analysis of nutrition, sense and quality of peanut seed with different testa color[J]. Mol Plant Breed, 2019, 17(5):1647-1657. 林茂, 赵景芳, 郑秀艳, 等. 不同种皮颜色花生生品的营养、感官和品质的分析[J]. 分子植物育种, 2019, 17(5):1647-1657. doi:10.13271/j.mpb.017.001647.
    [21] SHI T Y, YU M, HAN Y Q. The nutrients and characteristic analysis of Liaoning peanut varieties[J]. Food Res Dev, 2017, 38(22):142-147. 石太渊, 于淼, 韩艳秋. 辽宁花生品种营养成分及特性分析[J]. 食品研究与开发, 2017, 38(22):142-147. doi:10.3969/j.issn.1005-6521.2017.22.029.
    [22] MISRA J B, GHOSH P K, DAYAL D, et al. Agronomic, nutritional and physical characteristics of some Indian groundnut cultivars[J]. Ind J Agric Sci, 2000, 70(11):741-746.
    [23] LUO H, ZHOU G Y, FANG H B, et al. Studies on biochemical characters relative to direct edible peanut[J]. J Peanut Sci, 2004, 33(4):1-4. 罗虹, 周桂元, 方洪标, 等. 鲜食花生相关生化特性的研究[J]. 花生学报, 2004, 33(4):1-4. doi:10.3969/j.issn.1002-4093.2004.04.001.
    [24] PHAN-THIEN K Y, WRIGHT G C, LEE N A. Genotype-by-environment interaction affects the essential mineral composition of peanut (Arachis hypogaea L.) kernels[J]. J Agric Food Chem, 2010, 58(16):9204-9213. doi:10.1021/jf101332z.
    [25] WANG C T, WANG Z W, WANG X Z, et al. Peanut kernel mineral content and its relationship with main quality properties, germination characteristics and salt-alkali tolerance[J]. Shandong Agric Sci, 2019, 51(9):102-109. 王传堂, 王志伟, 王秀贞, 等. 花生子仁矿质元素含量及其与主要品质指标、萌发特性和耐盐碱性的关系[J]. 山东农业科学, 2019, 51(9):102-109. doi:10.14083/j.issn.1001-4942.2019.09.016.
    [26] LI S Y, LIU G Q. Increase of lipid-soluble nutritional components content in peanuts by germination[J]. Mod Food Sci Technol, 2018, 34(4):30-38. 李淑莹, 刘国琴. 发芽提高花生中主要脂溶性营养物质的含量[J]. 现代食品科技, 2018, 34(4):30-38. doi:10.13982/j.mfst.1673-9078.2018.04.006.
    [27] KIM Y N, CHO Y O. Vitamin E status of 20- to 59-year-old adults living in the Seoul metropolitan area of South Korea[J]. Nut Res Pract, 2015, 9(2):192-198. doi:10.4162/nrp.2015.9.2.192.
    [28] CHEN Y K, ZENG A, LUO Z H, et al. Advances on pharmacology of β-sitosterol[J]. J Guangdong Pharm Univ, 2021, 37(1):148-153. 陈元堃, 曾奥, 罗振辉, 等. β-谷甾醇药理作用研究进展[J]. 广东药科大学学报, 2021, 37(1):148-153. doi:10.16809/j/cnki.2096-3653. 2020040801.
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颜孙安,林香信,刘文静,黄敏敏,黄彪,姚清华.福建省花生地方品种营养特性分析[J].热带亚热带植物学报,2023,31(3):380~386

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  • 收稿日期:2021-12-10
  • 最后修改日期:2022-03-18
  • 在线发布日期: 2023-05-24
  • 出版日期: 2023-05-20
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